Variational Approach to Solving the Phonon Boltzmann Transport Equation for Analyzing Nanoscale Thermal Transport Experiments

Variational Approach to Solving the Phonon Boltzmann Transport Equation for Analyzing Nanoscale Thermal Transport Experiments
Author :
Publisher :
Total Pages : 140
Release :
ISBN-10 : OCLC:1036986646
ISBN-13 :
Rating : 4/5 (46 Downloads)

Book Synopsis Variational Approach to Solving the Phonon Boltzmann Transport Equation for Analyzing Nanoscale Thermal Transport Experiments by : Vazrik Chiloyan

Download or read book Variational Approach to Solving the Phonon Boltzmann Transport Equation for Analyzing Nanoscale Thermal Transport Experiments written by Vazrik Chiloyan and published by . This book was released on 2018 with total page 140 pages. Available in PDF, EPUB and Kindle. Book excerpt: Over time, technology has shrunk to smaller length scales, and as a result the heat transport in these systems has entered the nanoscale regime. With increasing computational speed and power consumption, there is a need to efficiently dissipate the heat generated for proper thermal management of computer chips. The ability to understand the physics of thermal transport in this regime is critical in order to model, engineer, and improve the performance of materials and devices. In the nanoscale regime, thermal transport is no longer diffusive, and the Fourier heat conduction equation, which we commonly utilize at the macroscale, fails to accurately predict heat flow at the nanoscale. We model the heat flow due to phonons (crystal lattice vibrations), the dominant heat carriers in semiconductors and dielectrics, by solving the Boltzmann transport equation (BTE) to develop an understanding of nondiffusive thermal transport and its dependence on the system geometry and material properties, such as the phonon mean free path. A variety of experimental heat transfer configurations have been established in order to achieve short time scales and small length scales in order to access the nondiffusive heat conduction regime. In this thesis, we develop a variational approach to solving the BTE, appropriate for different experimental configurations, such as transient thermal grating (TTG) and time-domain thermoreflectance (TDTR). We provide an efficient and general methodology to solving the BTE and gaining insight into the reduction of the effective thermal conductivity in the nondiffusive regime, known as classical size effects. We also extend the reconstruction procedure, which aims to utilize both modeling efforts as well as experimental measurements to back out the material properties such as phonon mean free path distributions, to provide further insight into the material properties relevant to transport. Furthermore, with the developed methodology, we aim to provide an analysis of experimental geometries with the inclusion of a thermal interface, to provide insight into the role the interface transmissivity plays in thermal transport in the nondiffusive regime. Lastly, we explore a variety of phonon source distributions that are achieved by heating a system, and show the important link between the system geometry and the distribution of phonons initiated by the heating. We show the exciting possibility that under certain nonthermal phonon distributions, it is possible to achieve enhanced thermal transport at the nanoscale, contrary to the current understanding of size effects only leading to reduced thermal conductivities at the nanoscale for thermal phonon distributions.


Variational Approach to Solving the Phonon Boltzmann Transport Equation for Analyzing Nanoscale Thermal Transport Experiments Related Books

Variational Approach to Solving the Phonon Boltzmann Transport Equation for Analyzing Nanoscale Thermal Transport Experiments
Language: en
Pages: 140
Authors: Vazrik Chiloyan
Categories:
Type: BOOK - Published: 2018 - Publisher:

DOWNLOAD EBOOK

Over time, technology has shrunk to smaller length scales, and as a result the heat transport in these systems has entered the nanoscale regime. With increasing
Volume Averaged Phonon Boltzmann Transport Equation for Simulation of Heat Transport in Composites
Language: en
Pages: 320
Authors: Columbia Mishra
Categories:
Type: BOOK - Published: 2016 - Publisher:

DOWNLOAD EBOOK

Heat transfer in nano-composites is of great importance in a variety of applications, including in thermoelectric materials, thermal interface and thermal manag
Modeling Steady-state and Transient Mesoscopic Heat Transfer Via Approximate Solutions to the Phonon Boltzmann Transport Equation
Language: en
Pages:
Authors: Joel Christenson
Categories:
Type: BOOK - Published: 2020 - Publisher:

DOWNLOAD EBOOK

The phonon Boltzmann transport equation (BTE), with the relaxation time approximation (RTA) scattering model, is used to analyze model problems in one and two s
Thermally-Aware Design
Language: en
Pages: 131
Authors: Yong Zhan
Categories: Integrated circuits
Type: BOOK - Published: 2008 - Publisher: Now Publishers Inc

DOWNLOAD EBOOK

Provides an overview of analysis and optimization techniques for thermally-aware chip design.
The Physics of Phonons
Language: en
Pages: 438
Authors: Gyaneshwar P. Srivastava
Categories: Science
Type: BOOK - Published: 2019-07-16 - Publisher: Routledge

DOWNLOAD EBOOK

There have been few books devoted to the study of phonons, a major area of condensed matter physics. The Physics of Phonons is a comprehensive theoretical discu